Newland is a permanent magnetic coupling designed and manufactured, able to transmit the torguel due to magnetic force that are established between the inner and outer rotor and without any me-l chanical force.

This allows them to seal the side in order to use completely separate it from the outside with a special bell separation.

Through our research we can do this with a separation technology that avoids the effect of overheating due to eddy currents and magnetic hysteresis due to the fact that the Stationary Can isl crossed by a magnetic field.

The use of magnetic coupling is recommended for applications where the treated liquid must notl come into contact with the external environment, or when the external environment should not comel into contact with the fluid, eliminating the problems of leakage and possible loss.

Structure

Consists of three main components: inner magnetic rotor, isolation cover, outer magnetic rotor.

Application

Some permanent magnets are embedded in the inner and outer rotors respectively, when the magnetic poles are coupled, then the inner and outer rotors can achieve synchronous non-contact transmission. While load fluctuations occur at the load end, the coupling will immediately lose synchronization during the overload period, which can avoid to damage equipment and accessories irreversiblely. Magnetic coupling is widely used in food, medical, chemical and other industries.

Features

1.Magnet Material: NdFeB/SmCo (optional).
2.Max Tw (℃):100℃、150℃、200℃、350℃(optional).
3.Metal material: inner rotor 304/316 (optional), isolation cover 304/316 (optional), outer rotor 304/ordinary carbon steel (optional).
4.Surface treatment: Inner rotor and isolation cover are generally polished, outer rotor is electroplated or sprayed (optional).
5.Maximum static torque can be customized according to application requirements.
6.The relevant dimensions can be designed customized according to application requirements.
7.The compressive strength of the isolation cover can be customized designing and testing according to application requirements.

Specification parameter

Item  Inner magnetic rotor Isolation cover Outer magnetic rotor Max unilateral air gap Magnet Material Max Temp Max torque (N·M)
A B C D E F G H J K L
NMC-74 53 12 25 82 55 1 74 60 43 12 12 3.5 NdFeB/SmCo 150℃/350℃ 3
NMC-90 61 14 30 90 63 1 90 68 66 14 20 3.5 NdFeB/SmCo 150℃/350℃ 12
NMC-100 70 18 50 120 72 1 100 77 118 20 40 3.5 NdFeB/SmCo 150℃/350℃ 30
NMC-130 89 20 65 140 91 1.2 130 96 150 30 55 3.5 NdFeB/SmCo 150℃/350℃ 50
NMC-150 103 24 75 170 105 1.2 150 110 170 40 60 3.5 NdFeB/SmCo 150℃/350℃ 100
NMC-165 114 24 75 170 116.5 1.5 165 122 210 40 60 4.0 NdFeB/SmCo 150℃/350℃ 120
NMC-195 142 32 90 200 144.5 2 195 151 260 60 85 4.5 NdFeB/SmCo 150℃/350℃ 300

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